-
1
-
-
33845622840
-
Nano- and bulk-silicon-based insertion anodes for lithium-ion secondary cells
-
U. Kasavajjula, C. Wang, and A.J. Appleby Nano- and bulk-silicon-based insertion anodes for lithium-ion secondary cells J Power Sources 163 2007 1003 1039
-
(2007)
J Power Sources
, vol.163
, pp. 1003-1039
-
-
Kasavajjula, U.1
Wang, C.2
Appleby, A.J.3
-
2
-
-
84884907143
-
25th anniversary article: Understanding the lithiation of silicon and other alloying anodes for lithium-ion batteries
-
M.T. McDowell, S.W. Lee, W.D. Nix, and Y. Cui 25th anniversary article: understanding the lithiation of silicon and other alloying anodes for lithium-ion batteries Adv Mater 25 36 2013 4966 4985
-
(2013)
Adv Mater
, vol.25
, Issue.36
, pp. 4966-4985
-
-
McDowell, M.T.1
Lee, S.W.2
Nix, W.D.3
Cui, Y.4
-
3
-
-
84867030978
-
Challenges facing lithium batteries and electrical double-layer capacitors
-
N. Choi, Z. Chen, S.A. Freunberger, X. Ji, Y. Sun, K. Amine, and et al. Challenges facing lithium batteries and electrical double-layer capacitors Angew Chem Int Ed 51 40 2012 9994 10024
-
(2012)
Angew Chem Int Ed
, vol.51
, Issue.40
, pp. 9994-10024
-
-
Choi, N.1
Chen, Z.2
Freunberger, S.A.3
Ji, X.4
Sun, Y.5
Amine, K.6
-
4
-
-
37849002504
-
High-performance lithium battery anodes using silicon nanowires
-
C.K. Chan, H. Peng, G. Liu, K. Mcilwrath, X.F. Zhang, R.A. Huggins, and et al. High-performance lithium battery anodes using silicon nanowires Nat Nanotechnol 3 1 2008 31 35
-
(2008)
Nat Nanotechnol
, vol.3
, Issue.1
, pp. 31-35
-
-
Chan, C.K.1
Peng, H.2
Liu, G.3
Mcilwrath, K.4
Zhang, X.F.5
Huggins, R.A.6
-
5
-
-
84862805736
-
Stable cycling of double-walled silicon nanotube battery anodes through solid-electrolyte interphase control
-
H. Wu, G. Chan, J.W. Choi, I. Ryu, Y. Yao, M.T. McDowell, and et al. Stable cycling of double-walled silicon nanotube battery anodes through solid-electrolyte interphase control Nat Nanotechnol 7 5 2012 310 315
-
(2012)
Nat Nanotechnol
, vol.7
, Issue.5
, pp. 310-315
-
-
Wu, H.1
Chan, G.2
Choi, J.W.3
Ryu, I.4
Yao, Y.5
McDowell, M.T.6
-
6
-
-
84867672114
-
Designing nanostructured Si anodes for high energy lithium ion batteries
-
H. Wu, and Y. Cui Designing nanostructured Si anodes for high energy lithium ion batteries Nano Today 7 5 2012 414 429
-
(2012)
Nano Today
, vol.7
, Issue.5
, pp. 414-429
-
-
Wu, H.1
Cui, Y.2
-
7
-
-
34548234978
-
In situ conductivity, impedance spectroscopy, and ex situ Raman spectra of amorphous silicon during the insertion/extraction of lithium
-
E. Pollak, G. Salitra, V. Baranchugov, and D. Aurbach In situ conductivity, impedance spectroscopy, and ex situ Raman spectra of amorphous silicon during the insertion/extraction of lithium J Phys Chem C 111 30 2007 11437 11444
-
(2007)
J Phys Chem C
, vol.111
, Issue.30
, pp. 11437-11444
-
-
Pollak, E.1
Salitra, G.2
Baranchugov, V.3
Aurbach, D.4
-
8
-
-
84891883895
-
Silicon-based nanomaterials for lithium-ion batteries: A review
-
X. Su, Q. Wu, J. Li, X. Xiao, A. Lott, W. Lu, and et al. Silicon-based nanomaterials for lithium-ion batteries: a review Adv Energy Mater 4 1 2014 1300882
-
(2014)
Adv Energy Mater
, vol.4
, Issue.1
, pp. 1300882
-
-
Su, X.1
Wu, Q.2
Li, J.3
Xiao, X.4
Lott, A.5
Lu, W.6
-
9
-
-
84862281347
-
A yolk-shell design for stabilized and scalable Li-ion battery alloy anodes
-
N. Liu, H. Wu, M.T. McDowell, Y. Yao, C. Wang, and Y. Cui A yolk-shell design for stabilized and scalable Li-ion battery alloy anodes Nano Lett 12 6 2012 3315 3321
-
(2012)
Nano Lett
, vol.12
, Issue.6
, pp. 3315-3321
-
-
Liu, N.1
Wu, H.2
McDowell, M.T.3
Yao, Y.4
Wang, C.5
Cui, Y.6
-
10
-
-
84895920205
-
A pomegranate-inspired nanoscale design for large-volume-change lithium battery anodes
-
N. Liu, Z. Lu, J. Zhao, M.T. McDowell, H. Lee, W. Zhao, and et al. A pomegranate-inspired nanoscale design for large-volume-change lithium battery anodes Nat Nanotechnol 9 3 2014 187 192
-
(2014)
Nat Nanotechnol
, vol.9
, Issue.3
, pp. 187-192
-
-
Liu, N.1
Lu, Z.2
Zhao, J.3
McDowell, M.T.4
Lee, H.5
Zhao, W.6
-
11
-
-
84856976715
-
Engineering empty space between Si nanoparticles for lithium-ion battery anodes
-
H. Wu, G. Zheng, N. Liu, T.J. Carney, Y. Yang, and Y. Cui Engineering empty space between Si nanoparticles for lithium-ion battery anodes Nano Lett 12 2 2012 904 909
-
(2012)
Nano Lett
, vol.12
, Issue.2
, pp. 904-909
-
-
Wu, H.1
Zheng, G.2
Liu, N.3
Carney, T.J.4
Yang, Y.5
Cui, Y.6
-
12
-
-
84872504929
-
Directing silicon-graphene self-assembly as a core/shell anode for high-performance lithium-ion batteries
-
Y. Zhu, W. Liu, X. Zhang, J. He, J. Chen, Y. Wang, and et al. Directing silicon-graphene self-assembly as a core/shell anode for high-performance lithium-ion batteries Langmuir 29 2 2013 744 749
-
(2013)
Langmuir
, vol.29
, Issue.2
, pp. 744-749
-
-
Zhu, Y.1
Liu, W.2
Zhang, X.3
He, J.4
Chen, J.5
Wang, Y.6
-
13
-
-
84923529929
-
Highly uniform silicon nanoparticle/porous carbon nanofiber hybrids towards free-standing high-performance anodes for lithium-ion batteries
-
M. Wang, W. Song, J. Wang, and L. Fan Highly uniform silicon nanoparticle/porous carbon nanofiber hybrids towards free-standing high-performance anodes for lithium-ion batteries Carbon 82 2015 337 345
-
(2015)
Carbon
, vol.82
, pp. 337-345
-
-
Wang, M.1
Song, W.2
Wang, J.3
Fan, L.4
-
14
-
-
84874432208
-
Adaptable silicon-carbon nanocables sandwiched between reduced graphene oxide sheets as lithium ion battery anodes
-
B. Wang, X. Li, X. Zhang, B. Luo, M. Jin, M. Liang, and et al. Adaptable silicon-carbon nanocables sandwiched between reduced graphene oxide sheets as lithium ion battery anodes ACS Nano 7 2 2013 1437 1445
-
(2013)
ACS Nano
, vol.7
, Issue.2
, pp. 1437-1445
-
-
Wang, B.1
Li, X.2
Zhang, X.3
Luo, B.4
Jin, M.5
Liang, M.6
-
15
-
-
77949356255
-
Silicon nanoparticles-graphene paper composites for Li ion battery anodes
-
J.K. Lee, K.B. Smith, C.M. Hayner, and H.H. Kung Silicon nanoparticles-graphene paper composites for Li ion battery anodes Chem Commun 46 12 2010 2025 2027
-
(2010)
Chem Commun
, vol.46
, Issue.12
, pp. 2025-2027
-
-
Lee, J.K.1
Smith, K.B.2
Hayner, C.M.3
Kung, H.H.4
-
16
-
-
84895059729
-
Multilayered Si nanoparticle/reduced graphene oxide hybrid as a high-performance lithium-ion battery anode
-
J. Chang, X. Huang, G. Zhou, S. Cui, P.B. Hallac, J. Jiang, and et al. Multilayered Si nanoparticle/reduced graphene oxide hybrid as a high-performance lithium-ion battery anode Adv Mater 26 5 2014 758 764
-
(2014)
Adv Mater
, vol.26
, Issue.5
, pp. 758-764
-
-
Chang, J.1
Huang, X.2
Zhou, G.3
Cui, S.4
Hallac, P.B.5
Jiang, J.6
-
17
-
-
84922238740
-
Multilayered silicon embedded porous carbon/graphene hybrid film as a high performance anode
-
J. Wu, X. Qin, H. Zhang, Y. He, B. Li, L. Ke, and et al. Multilayered silicon embedded porous carbon/graphene hybrid film as a high performance anode Carbon 84 2015 434 443
-
(2015)
Carbon
, vol.84
, pp. 434-443
-
-
Wu, J.1
Qin, X.2
Zhang, H.3
He, Y.4
Li, B.5
Ke, L.6
-
18
-
-
84892141482
-
Engineered Si electrode nanoarchitecture: A scalable postfabrication treatment for the production of next-generation Li-ion batteries
-
F.M. Hassan, V. Chabot, A.R. Elsayed, X. Xiao, and Z. Chen Engineered Si electrode nanoarchitecture: a scalable postfabrication treatment for the production of next-generation Li-ion batteries Nano Lett 14 1 2014 277 283
-
(2014)
Nano Lett
, vol.14
, Issue.1
, pp. 277-283
-
-
Hassan, F.M.1
Chabot, V.2
Elsayed, A.R.3
Xiao, X.4
Chen, Z.5
-
19
-
-
84881533816
-
Si/C hybrid nanostructures for Li-ion anodes: An overview
-
M.L. Terranova, S. Orlanducci, E. Tamburri, V. Guglielmotti, and M. Rossi Si/C hybrid nanostructures for Li-ion anodes: An overview J Power Sources 246 2014 167 177
-
(2014)
J Power Sources
, vol.246
, pp. 167-177
-
-
Terranova, M.L.1
Orlanducci, S.2
Tamburri, E.3
Guglielmotti, V.4
Rossi, M.5
-
20
-
-
77950021498
-
High-performance lithium-ion anodes using a hierarchical bottom-up approach
-
A. Magasinski, P. Dixon, B. Hertzberg, A. Kvit, J. Ayala, and G. Yushin High-performance lithium-ion anodes using a hierarchical bottom-up approach Nat Mater 9 4 2010 353 358
-
(2010)
Nat Mater
, vol.9
, Issue.4
, pp. 353-358
-
-
Magasinski, A.1
Dixon, P.2
Hertzberg, B.3
Kvit, A.4
Ayala, J.5
Yushin, G.6
-
21
-
-
84906654005
-
Elastic a-silicon nanoparticle backboned graphene hybrid as a self-compacting anode for high-rate lithium ion batteries
-
M. Ko, S. Chae, S. Jeong, P. Oh, and J. Cho Elastic a-silicon nanoparticle backboned graphene hybrid as a self-compacting anode for high-rate lithium ion batteries ACS Nano 8 8 2014 8591 8599
-
(2014)
ACS Nano
, vol.8
, Issue.8
, pp. 8591-8599
-
-
Ko, M.1
Chae, S.2
Jeong, S.3
Oh, P.4
Cho, J.5
-
22
-
-
85027917805
-
Highly reversible and large lithium storage in mesoporous Si/C nanocomposite anodes with silicon nanoparticles embedded in a carbon framework
-
R. Zhang, Y. Du, D. Li, D. Shen, J. Yang, Z. Guo, and et al. Highly reversible and large lithium storage in mesoporous Si/C nanocomposite anodes with silicon nanoparticles embedded in a carbon framework Adv Mater 26 39 2014 6749 6755
-
(2014)
Adv Mater
, vol.26
, Issue.39
, pp. 6749-6755
-
-
Zhang, R.1
Du, Y.2
Li, D.3
Shen, D.4
Yang, J.5
Guo, Z.6
-
23
-
-
85027917523
-
Approaching the downsizing limit of silicon for surface-controlled lithium storage
-
B. Wang, X. Li, B. Luo, L. Hao, M. Zhou, X. Zhang, and et al. Approaching the downsizing limit of silicon for surface-controlled lithium storage Adv Mater 27 9 2015 1526 1532
-
(2015)
Adv Mater
, vol.27
, Issue.9
, pp. 1526-1532
-
-
Wang, B.1
Li, X.2
Luo, B.3
Hao, L.4
Zhou, M.5
Zhang, X.6
-
24
-
-
84867288645
-
Self-assembled nanocomposite of silicon nanoparticles encapsulated in graphene through electrostatic attraction for lithium-ion batteries
-
X. Zhou, Y. Yin, L. Wan, and Y. Guo Self-assembled nanocomposite of silicon nanoparticles encapsulated in graphene through electrostatic attraction for lithium-ion batteries Adv Energy Mater 2 9 2012 1086 1090
-
(2012)
Adv Energy Mater
, vol.2
, Issue.9
, pp. 1086-1090
-
-
Zhou, X.1
Yin, Y.2
Wan, L.3
Guo, Y.4
-
25
-
-
84861418034
-
Efficient 3D conducting networks built by graphene sheets and carbon nanoparticles for high-performance silicon anode
-
X. Zhou, Y. Yin, A. Cao, L. Wan, and Y. Guo Efficient 3D conducting networks built by graphene sheets and carbon nanoparticles for high-performance silicon anode ACS Appl Mater Interfaces 4 5 2012 2824 2828
-
(2012)
ACS Appl Mater Interfaces
, vol.4
, Issue.5
, pp. 2824-2828
-
-
Zhou, X.1
Yin, Y.2
Cao, A.3
Wan, L.4
Guo, Y.5
-
26
-
-
84883487950
-
Graphene-encapsulated Si on ultrathin-graphite foam as anode for high capacity lithium-ion batteries
-
J. Ji, H. Ji, L.L. Zhang, X. Zhao, X. Bai, X. Fan, and et al. Graphene-encapsulated Si on ultrathin-graphite foam as anode for high capacity lithium-ion batteries Adv Mater 25 33 2013 4673 4677
-
(2013)
Adv Mater
, vol.25
, Issue.33
, pp. 4673-4677
-
-
Ji, J.1
Ji, H.2
Zhang, L.L.3
Zhao, X.4
Bai, X.5
Fan, X.6
-
27
-
-
84899822402
-
Dual conductive network-enabled graphene/Si-C composite anode with high areal capacity for lithium-ion batteries
-
R. Yi, J. Zai, F. Dai, M.L. Gordin, and D. Wang Dual conductive network-enabled graphene/Si-C composite anode with high areal capacity for lithium-ion batteries Nano Energy 6 2014 211 218
-
(2014)
Nano Energy
, vol.6
, pp. 211-218
-
-
Yi, R.1
Zai, J.2
Dai, F.3
Gordin, M.L.4
Wang, D.5
-
28
-
-
73249148467
-
Low-temperature exfoliated graphenes: Vacuum-promoted exfoliation and electrochemical energy storage
-
W. Lv, D. Tang, Y. He, C. You, Z. Shi, X. Chen, and et al. Low-temperature exfoliated graphenes: vacuum-promoted exfoliation and electrochemical energy storage ACS Nano 3 11 2009 3730 3736
-
(2009)
ACS Nano
, vol.3
, Issue.11
, pp. 3730-3736
-
-
Lv, W.1
Tang, D.2
He, Y.3
You, C.4
Shi, Z.5
Chen, X.6
-
29
-
-
77957061092
-
Graphene-wrapped Fe3O4 anode material with improved reversible capacity and cyclic stability for lithium ion batteries
-
G. Zhou, D. Wang, F. Li, L. Zhang, N. Li, Z. Wu, and et al. Graphene-wrapped Fe3O4 anode material with improved reversible capacity and cyclic stability for lithium ion batteries Chem Mater 22 18 2010 5306 5313
-
(2010)
Chem Mater
, vol.22
, Issue.18
, pp. 5306-5313
-
-
Zhou, G.1
Wang, D.2
Li, F.3
Zhang, L.4
Li, N.5
Wu, Z.6
-
30
-
-
84860381393
-
Oxygen bridges between NiO nanosheets and graphene for improvement of lithium storage
-
G. Zhou, D. Wang, L. Yin, N. Li, F. Li, and H. Cheng Oxygen bridges between NiO nanosheets and graphene for improvement of lithium storage ACS Nano 6 4 2012 3214 3223
-
(2012)
ACS Nano
, vol.6
, Issue.4
, pp. 3214-3223
-
-
Zhou, G.1
Wang, D.2
Yin, L.3
Li, N.4
Li, F.5
Cheng, H.6
-
31
-
-
84903706288
-
In situ coating of nitrogen-doped graphene-like nanosheets on silicon as a stable anode for high performance lithium-ion batteries
-
H. Mi, Y. Li, P. Zhu, X. Chai, L. Sun, H. Zhuo, and et al. In situ coating of nitrogen-doped graphene-like nanosheets on silicon as a stable anode for high performance lithium-ion batteries J Mater Chem A 2 29 2014 11254 11260
-
(2014)
J Mater Chem A
, vol.2
, Issue.29
, pp. 11254-11260
-
-
Mi, H.1
Li, Y.2
Zhu, P.3
Chai, X.4
Sun, L.5
Zhuo, H.6
-
32
-
-
84892476576
-
Hierarchical 3D mesoporous silicon@graphene nanoarchitectures for lithium ion batteries with superior performance
-
S. Chen, P. Bao, X. Huang, B. Sun, and G. Wang Hierarchical 3D mesoporous silicon@graphene nanoarchitectures for lithium ion batteries with superior performance Nano Res 7 1 2014 85 94
-
(2014)
Nano Res
, vol.7
, Issue.1
, pp. 85-94
-
-
Chen, S.1
Bao, P.2
Huang, X.3
Sun, B.4
Wang, G.5
-
33
-
-
53449094361
-
Superior storage performance of a Si@SiOx/C nanocomposite as anode material for lithium-ion batteries
-
Y. Hu, R. Demir-Cakan, M. Titirici, J. Müller, R. SchlÖgl, M. Antonietti, and et al. Superior storage performance of a Si@SiOx/C nanocomposite as anode material for lithium-ion batteries Angew Chem Int Ed 47 9 2008 1645 1649
-
(2008)
Angew Chem Int Ed
, vol.47
, Issue.9
, pp. 1645-1649
-
-
Hu, Y.1
Demir-Cakan, R.2
Titirici, M.3
Müller, J.4
Schlögl, R.5
Antonietti, M.6
-
34
-
-
84896941430
-
Self-assembly of Si/honeycomb reduced graphene oxide composite film as a binder-free and flexible anode for Li-ion batteries
-
H. Tang, J. Tu, X. Liu, Y. Zhang, S. Huang, W. Li, and et al. Self-assembly of Si/honeycomb reduced graphene oxide composite film as a binder-free and flexible anode for Li-ion batteries J Mater Chem A 2 16 2014 5834 5840
-
(2014)
J Mater Chem A
, vol.2
, Issue.16
, pp. 5834-5840
-
-
Tang, H.1
Tu, J.2
Liu, X.3
Zhang, Y.4
Huang, S.5
Li, W.6
|